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气膜冷却流场传热特性的数值分析
引用本文:张玲,连虎,李少华. 气膜冷却流场传热特性的数值分析[J]. 东北电力学院学报, 2008, 28(6): 75-79
作者姓名:张玲  连虎  李少华
作者单位:[1]东北电力大学能源与机械工程学院,吉林吉林132012 [2]辽宁南票煤电有限公司,辽宁葫芦岛125027
摘    要:应用Realizablek-8紊流模型对吹风比为0.5、1.0、1.5和2.0的三维气膜冷却流场进行了数值模拟,分析了回流区和反向涡旋对(CVP)对射流下游壁面换热的影响。计算结果表明,壁面换热峰值点位于分离点附近,在分离点后,努塞尔数沿流动方向逐渐降低;努塞尔数并不随吹风比的变化而单调变化,而是在吹风比为1.0时存在最佳值。

关 键 词:气膜冷却  数值模拟  传热特性  反向涡旋对

Numerical Analysis of Heat Transfer in Film Cooling Flows
ZHANG Ling,LIAN Hu,LI Shao-hua. Numerical Analysis of Heat Transfer in Film Cooling Flows[J]. Journal of Northeast China Institute of Electric Power Engineering, 2008, 28(6): 75-79
Authors:ZHANG Ling  LIAN Hu  LI Shao-hua
Affiliation:ZHANG Ling, LIAN Hu, LI Shao-hua ( 1. North China Electric Power University, Beijing, China, 102206 ; 2. Northeast Dianli University,Jilin, China, 132012)
Abstract:Numerical simulation is performed to investigate the heat transfer characteristics of the 3D film cooling flows, using the realizable model at the flow ratios of 0.5,1. 0, 1.5, and 2.0. The influence of the separate bubble and the counter-rotating vortex pair (CVP) on the heat transfer characteristics downstream of the jet is studied. The results show that the most intensive heat transfer takes place well near the reattachment point and Nusselt decreases along flow direction after the reattachment point. Nusseh doesn t monotonously vary with changing flow ratio but attains an optimum with a ratio of 1. 0.
Keywords:Film cooling  Numerical simulation  Heat transfer  Counter-rotating vortex pair
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